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. Development of advanced imaging and characterization technologies (X-ray micro tomography, EPR imaging and spectroscopy) to evaluate performance of electrodes and to map electrolyte chemical composition in
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Max Planck Institute for the Structure and Dynamics of Matter • | Hamburg, Hamburg | Germany | 2 months ago
programme Yes Joint degree / double degree programme No Description/content The programme offers exciting research opportunities at ultra-intense electron and x-ray sources to directly observe atomic motions
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Max Planck Institute for Extraterrestrial Physics, Garching | Garching an der Alz, Bayern | Germany | 2 months ago
the first All-Sky Survey (RASS) with an imaging X-ray telescope and thus provided another window for finding SNRs and compact objects that may reside within them. eROSITA (extended ROentgen Survey with
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electrode structures. • Prototyping of the identified structures via stereolithographic 3D printing and advanced textile techniques. • Development of advanced imaging and characterization technologies (X-ray
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Max Planck Institute for Extraterrestrial Physics, Garching | Garching an der Alz, Bayern | Germany | 2 months ago
the first All-Sky Survey (RASS) with an imaging X-ray telescope and thus provided another window for finding SNRs and compact objects that may reside within them. eROSITA (extended ROentgen Survey with
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. The upcoming FAIR facility will enable unprecedented experiments to explore the structure of matter and the evolution of the universe. The HISPEC/DESPEC collaboration focuses on γ-ray based nuclear spectroscopy
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analysis (SEC, spectroscopy, X-Ray, NMR, MS) is required. • Practical experience in modelling and design of proteins (Rosetta, Alpha-Fold, docking, molecular dynamics, etc.) will be positively
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, connections to diverse cellular processes and repurposing for the export of non-canonical mRNAs remains cryptic. PhD Project: “Mechanistic insights into novel mRNA export complexes” During my postdoc I
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of the molecular species of the radionuclide in cellular compartments/cells using spectroscopic techniques (e.g., UV-Vis, Raman, X-ray absorption spectroscopy) and microscopic methods (e.g., electron microscopy
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thickness. We will employ temperature, light, (tunnel) electrons, and soft x-rays to trigger the spin-state switching of the complexes. Using a combination of x-ray absorption spectroscopy (XAS) and in